Bifidobacterium animalis subsp. lactis BL-G101 Protects Against UVB-Induced Photoaging in HS68 Dermal Fibroblasts

Background: Skin photoaging is primarily caused by prolonged ultraviolet (UV) exposure, which manifests as dryness and wrinkle formation. Recent studies highlight that beneficial microorganisms have garnered considerable attention for their emerging role in modulating host health, especially in skin photoaging. Methods: To investigate the role of two strains, Bifidobacterium animalis subsp. lactis BL-G101 (BL-G101) and Lactobacillus acidophilus LA-G80 (LA-G80), in UVB-induced photoaging, we conducted experiments on human Hs68 dermal fibroblasts. Using untargeted metabolomics, we explored the potential mechanisms underlying BL-G101 treatment in Hs68 cells by profiling differential metabolites in the intracellular and extracellular metabolomes. Results: Our results demonstrated that BL-G101 significantly inhibited UVB-induced reduction in collagen and hyaluronic acid (HA), whereas LA-G80 showed no notable effects. BL-G101 treatment also protects against UVB-induced oxidative stress, which was evidenced by significantly decreased MDA levels and enhanced SOD activity. Moreover, BL-G101 suppressed UVB-induced inflammation by significantly decreasing IL-1β and TNF-α levels. SA-β-gal staining revealed a reduction in senescent fibroblasts following BL-G101 treatment. Untargeted metabolomics suggested that the anti-photoaging effects of BL-G101 may involve the modulation of metabolic pathways of biosynthesis of cofactors, glycine, serine and threonine metabolism, and arginine biosynthesis. Conclusions: These preclinical findings demonstrate that BL-G101 reduces dermal photoaging, supporting its potential as a functional food ingredient against skin aging.

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Publication Details

Journal
Nutrients
Published
2026-09-15
DOI
https://doi.org/10.3390/nu18183013
Primary Topic
Skin Protection and Aging
Type
article
Field-Weighted Citation Impact
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article

Bifidobacterium animalis subsp. lactis BL-G101 Protects Against UVB-Induced Photoaging in HS68 Dermal Fibroblasts

Jingya Guo, Seong‐Gook Kang, Ruixuan Geng, Tao Tong et al.
Nutrients
Skin Protection and Aging
article

Bifidobacterium animalis subsp. lactis BL-G101 Protects Against UVB-Induced Photoaging in HS68 Dermal Fibroblasts

Jingya Guo, Seong‐Gook Kang, Ruixuan Geng, Tao Tong, Kunlun Huang
article en

Abstract

Background: Skin photoaging is primarily caused by prolonged ultraviolet (UV) exposure, which manifests as dryness and wrinkle formation. Recent studies highlight that beneficial microorganisms have garnered considerable attention for their emerging role in modulating host health, especially in skin photoaging. Methods: To investigate the role of two strains, Bifidobacterium animalis subsp. lactis BL-G101 (BL-G101) and Lactobacillus acidophilus LA-G80 (LA-G80), in UVB-induced photoaging, we conducted experiments on human Hs68 dermal fibroblasts. Using untargeted metabolomics, we explored the potential mechanisms underlying BL-G101 treatment in Hs68 cells by profiling differential metabolites in the intracellular and extracellular metabolomes. Results: Our results demonstrated that BL-G101 significantly inhibited UVB-induced reduction in collagen and hyaluronic acid (HA), whereas LA-G80 showed no notable effects. BL-G101 treatment also protects against UVB-induced oxidative stress, which was evidenced by significantly decreased MDA levels and enhanced SOD activity. Moreover, BL-G101 suppressed UVB-induced inflammation by significantly decreasing IL-1β and TNF-α levels. SA-β-gal staining revealed a reduction in senescent fibroblasts following BL-G101 treatment. Untargeted metabolomics suggested that the anti-photoaging effects of BL-G101 may involve the modulation of metabolic pathways of biosynthesis of cofactors, glycine, serine and threonine metabolism, and arginine biosynthesis. Conclusions: These preclinical findings demonstrate that BL-G101 reduces dermal photoaging, supporting its potential as a functional food ingredient against skin aging.

NutrientsVol. 18(18)
Mokpo National University (KR), Dalian Medical University (CN), China Agricultural University (CN)
Openalex Percentile: Top 9%
Skin Protection and Aging
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